EMBUX SOM4019 Module with Dual Band Dual Concurrent Wi-Fi User Manual

May 15, 2024
EMBUX

EMBUX SOM4019 Module with Dual Band Dual Concurrent Wi-Fi

Product Information

Specifications :

  • Processor: ARM Cortex-A7, 716.8MHz, 256KB L2 Cache
  • Memory: DRAM NOR FLASH
  • Wi-Fi:
    • IEEE 802.11 b/g/n 2×2 2.4GHz 20/40 MHz
    • IEEE 802.11 an/ac 2×2 5GHz 20/40/80 MHz
  • Peripherals: PCIe 2.0, USB 2.0, USB 3.0, UART, SPI (Master), I2C, GPIO, JTAG, Copper 10BASE-Te/100BASE-TX/1000BASE-T, Reset, SDIO3.0/eMMC, Antenna connector
  • Operating temperature: [Specify operating temperature]
  • Storage temperature: [Specify storage temperature]

Product Overview:
The SOM4019 module is based on an IPQ4019/IPQ4029 SoC from Qualcomm, which incorporates a powerful quad-core ARM Cortex A7 processor. It is ideal for resource demanding applications including routers, gateways, and access points. The SOM4019 comes with a high-power, dual-band concurrent radio supporting 802.11ac Wave2 technology (2×2 MIMO). It also has USB ports and supports other miscellaneous interfaces, which can be configured as general- purpose I/O pins.

Block Diagram:

Pin Definition:

Pin ID Pin Name Type Description

Product Usage Instructions

  1. Installation:
    [Step-by-step installation process]

  2. Configuration:
    [Step-by-step configuration instructions]

  3. Maintenance :
    [Maintenance tips and guidelines]

  4. Troubleshooting :
    [Common issues and solutions]

FAQ (Frequently Asked Questions)

  • Q: How do I reset the device to factory settings?
    A: [Answer to the question about resetting the device]

  • Q: Can I upgrade the Wi-Fi data rate on this module?
    A: [Answer to the question about upgrading Wi-Fi data rate]

SOM4019
IPQ4019 SOM module with dual band dual concurrent Wi-Fi

FCC Warning

Note:

  • Changes or modifications to this unit not expressly approved by the party responsible for compliance could void the user authority to operate the equipment.
  • To comply with FCC RF exposure compliance requirements, a separation distance of at least 20 cm must be maintained between the antenna of this device and all persons.
  • This Transmitter must not be co-located or operating in conjunction with any other antenna or transmitter

This device is intended only for OEM integrators under the following conditions:

  1. The antenna must be installed such that 20 cm is maintained between the antenna and users. For laptop installations, the antenna must be installed to ensure that the proper spacing is maintained in the event the users places the device in their lap during use (i.e. positioning of antennas must be placed in the upper portion of the LCD panel only to ensure 20 cm will be maintained if the user places the device in their lap for use) and
  2. The transmitter module may not be co-located with any other transmitter or antenna. As long as the 2 conditions above are met, further transmitter testing will not be required. However, the OEM integrator is still responsible for testing their end-product for any additional compliance requirements required with this module installed (for example, digital device emissions, PC peripheral requirements, etc.).

IMPORTANT NOTE:
In the event that these conditions can not be met (for example certain laptop configurations or co-location with another transmitter), then the FCC authorization is no longer considered valid and the FCC ID can not be used on the final product. In these circumstances, the OEM integrator will be responsible for re-evaluating the end product (including the transmitter) and obtaining a separate FCC authorization.

  • End Product Labeling
    This transmitter module is authorized only for use in devices where the antenna may be installed such that 20 cm may be maintained between the antenna and users (for example access points, routers, wireless ASDL modems, certain laptop configurations, and similar equipment). The final end product must be labeled in a visible area with the following: “Contains TX FCC ID: 2AVW3-SOM4019.

  • RF Exposure Manual Information That Must be Included
    The users manual for end users must include the following information in a prominent location “IMPORTANT NOTE: To comply with FCC RF exposure compliance requirements, the antenna used for this transmitter must be installed to provide a separation distance of at least 20 cm from all persons and must not be co-located or operating in conjunction with any other antenna or transmitter.”

  • Additional Information That Must be Provided to OEM Integrators
    The end user should NOT be provided any instructions on how to remove or install the device.

Main Features

  • Chipset: industrial-grade IPQ4019 chipset
  • Standard: 802.11ABGN/AC
  • PCB mounting with normal pin header
  • Antenna: 2 x IPEX connectors, 2T2R
  • Data rate up to 300 Mbps + 866 Mbps
  • Enhanced wireless security: WEP, WPA, WPA2
  • High RF power for longer communication range

Product Overview

SOM4019 module is based on an IPQ4019/IPQ4029 SoC from Qualcomm, which incorporates a powerful quad-core ARM Cortex A7 processor. It is ideal for resource demanding applications including routers, gateways and access points. SOM4019 comes with a high-power, dual-band concurrent radio supporting 802.11ac Wave2 technology (2×2 MIMO). It also has USB ports and supports other miscellaneous interfaces, which can be configured as general-purpose I/O pins.

Specification

Item Description SOM4019
Processor ARM Cortex-A7, 716.8MHz, 256KB L2 Cache IPQ4019
Memory DRAM DDR3L 512 MB
NOR FLASH 32MB
Wi-Fi IEEE 802.11 b/g/n 2×2 2.4GHz 20/40 MHz 2412MHz – 2482MHz
IEEE 802.11 an/ac 2×2 5GHz 20/40/80 MHz 5180MHz – 5240MHz

5745MHz – 5825MHz
Peripherals| PCIe 2.0| 1
USB 2.0| 1
USB 3.0| 1
UART| 2
SPI ( Master )| 1
I2C| 2
GPIO| 14
JTAG| 1
Copper 10BASE-Te/100BASE-TX/1000BASE-T| 2
Reset| 1
SDIO3.0/eMMC| 1
RF Interface| Antenna connector| IPEX
Temperature| Operating temperature| -40~75°C
Storage temperature| -40 °C ~ 85 °C

Block diagram

EMBUX-SOM4019-Module-with-Dual-Band-Dual-Concurrent-Wi-
Fi-02

Pin Definition

Pin ID Pin Name Type Description
P1 GND GND Ground
P2 GND GND Ground
P3 P3_TRX0+ AI/AO PHY3 Media Dependent Interface pair 0, connect to XFMR
P4 P3_TRX0- AI/AO
P5 P3_TRX1+ AI/AO PHY3 Media Dependent Interface pair 1, connect to XFMR
P6 P3_TRX1- AI/AO
P7 P3_TRX2+ AI/AO PHY3 Media Dependent Interface pair 2, connect to XFMR
P8 P3_TRX2- AI/AO
P9 P3_TRX3+ AI/AO PHY3 Media Dependent Interface pair 3, connect to XFMR
P10 P3_TRX3- AI/AO
P11 GND GND Ground
P12 GND GND Ground
P13 P4_TRX0+ AI/AO PHY4 Media Dependent Interface pair 0, connect to XFMR
P14 P4_TRX0- AI/AO
P15 P4_TRX1+ AI/AO PHY4 Media Dependent Interface pair 1, connect to XFMR
--- --- --- ---
P16 P4_TRX1- AI/AO
P17 P4_TRX2+ AI/AO PHY4 Media Dependent Interface pair 2, connect to XFMR
P18 P4_TRX2- AI/AO
P19 P4_TRX3+ AI/AO PHY4 Media Dependent Interface pair 3, connect to XFMR
P20 P4_TRX3- AI/AO
P21 GND GND Ground
P22 GND GND Ground
P23 PCIE_TXP AO Clock to PCIe end point
P24 PCIE_TXN AO Clock to PCIe end point
P25 PCIE_RXP AI PCIe receive lane – positive
P26 PCIE_RXN AI PCIe receive lane – negative
P27 PCIE_CLKOUT_P AO PCIe transmit lane – positive
P28 PCIE_CLKOUT_N AO PCIe transmit lane – negative
P29 GND GND Ground
P30 GND GND Ground
P31 USB2_DP AI, AO USB HS data plus
P32 USB2_DM AI, AO USB HS data negative
P33 GND GND Ground
P34 GND GND Ground
P35 USB3_SS_TX_P AO SS USB transmit data positive
P36 USB3_SS_TX_N AO USB SS transmit data negative
P37 USB3_SS_RX_P AI USB SS receive data positive
P38 USB3_SS_RX_N AI USB SS receive data negative
P39 USB3_HS_DP AI, AO USB HS data positive
P40 USB3_HS_DM AI, AO USB HS data negative
P41 GND GND Ground
P42 GND GND Ground
P43 BISP_SPI1_SCK I/O GPIO44
P44 BISP_SPI1_SS0_N I/O GPIO45
P45 BISP_SPI1_MOSI I/O GPIO46
P46 BISP_SPI1_MISO I/O GPIO47
P47 GND GND Ground
P48 GND GND Ground
P49 12V AI 12V Power Input
P50 12V AI 12V Power Input
P51 GND GND Ground
--- --- --- ---
P52 GND GND Ground
P53 SDIO_CD I/O GPIO22
P54 SDIO_DATA0 I/O GPIO23
P55 SDIO_DATA1 I/O GPIO24
P56 SDIO_DATA2 I/O GPIO25
P57 SDIO_DATA3 I/O GPIO26
P58 SDIO_CLK O GPIO27
P59 SDIO_CMD I/O GPIO28
P60 SDIO_DATA4 I/O GPIO29
P61 SDIO_DATA5 I/O GPIO30
P62 SDIO_DATA6 I/O GPIO31
P63 SDIO_DATA7 I/O GPIO32
P64 GND GND Ground
P65 GND GND Ground
P66 GND GND Ground
P67 BLSP_I2C0_SCK I/O GPIO20
P68 BLSP_I2C0_SDA I/O GPIO21
P69 BLSP_I2C1_SCK I/O GPIO34
P70 BLSP_I2C1_SDA I/O GPIO35
P71 DVDD33 O 3.3V Power Output
P72 GND GND Ground
P73 UART0_RXD I GPIO16
P74 UART1_RXD I/O GPIO9
P75 UART0_TXD O GPIO17
P76 UART1_TXD O GPIO8
P77 GND GND Ground
P78 GND GND Ground
P79 WPS_SW_GPIO18 I GPIO18
P80 CHIP_PWD_L I Chip power-on reset
P81 GND GND Ground
P82 GND GND Ground
P83 GPIO10 I/O GPIO10
P84 GPIO11 I/O GPIO11
P85 GPIO36 O GPIO36
P86 WLAN_ACTIVE O GPIO37/Boot
P87 PCIE_RST_N O GPIO38
--- --- --- ---
P88 PCIE_CLK_REQ_N I/O GPIO39
P89 PCIE_WAKE_L I/O GPIO40
P90 GPIO42 I GPIO42
P91 GPIO43 I GPIO43
P92 GPIO48 O GPIO48
P93 GPIO49 I/O GPIO49
P94 GPIO50 I/O GPIO50
P95 PCIE_WIFI_STRN_LED O GPIO51/BOOT
P96 QPIC_PAD_TE I/O GPIO52
P97 P3_1000_LED I/O Parallel LED output for 1000BASE-T of PHY3
P98 P4_1000_LED I/O Parallel LED output for 1000BASE-T or 1000BASE-X of

PHY4
P99| GND| GND| Ground
P100| GND| GND| Ground

Mechanical characteristics

Mechanical drawing

EMBUX-SOM4019-Module-with-Dual-Band-Dual-Concurrent-Wi-
Fi-03

EMBUX-SOM4019-Module-with-Dual-Band-Dual-Concurrent-Wi-
Fi-04

Development with SOM module

SOM4019 module is easy to implement to your design. User only reserve commonly used pin headers as board-to-board connector to have SOM module integrated to your system. You may run the main program in SOM module while regarding the IO interface deployed in the bottom board. When designing with SOM4019, carefully follow the pin definition above for the power & interfaces connections. The following is SOM4019 together with a bottom board for reference.

EMBUX-SOM4019-Module-with-Dual-Band-Dual-Concurrent-Wi-
Fi-05

This document is subject to change without notice.

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